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MM54C174 반도체 회로 부품 판매점

Hex D Flip-Flop



National 로고
National
MM54C174 데이터시트, 핀배열, 회로
MM54C174 MM74C174 Hex D Flip-Flop
General Description
The MM54C174 MM74C174 hex D flip-flop is a monolithic
complementary MOS (CMOS) integrated circuit constructed
with N- and P-channel enhancement transistors All have a
direct clear input Information at the D inputs meeting the
setup time requirements is transferred to the Q outputs on
the positive-going edge of the clock pulse Clear is indepen-
dent of clock and accomplished by a low level at the clear
input All inputs are protected by diodes to VCC and GND
Features
Y Wide supply voltage range
Y Guaranteed noise margin
Y High noise immunity
Y Low power TTL compatibility
Logic and Connection Diagrams
February 1988
3 0V to 15V
1 0V
0 45 VCC (typ )
Fan out of 2
driving 74L
Dual-In-Line Package
TL F 5899 – 2
TL F 5899 – 1
Truth Table
TL F 5899 – 3
Inputs
Output
Clear
Clock
D
Q
L
XX
L
H
uH
H
H
uL
L
H
LX
Q
Top View
TL F 5899 – 4
Order Number MM54C174 or MM74C174
C1995 National Semiconductor Corporation TL F 5899
RRD-B30M105 Printed in U S A


MM54C174 데이터시트, 핀배열, 회로
Absolute Maximum Ratings (Note 1)
If Military Aerospace specified devices are required
please contact the National Semiconductor Sales
Office Distributors for availability and specifications
Voltage at Any Pin
Operating Temperature Range
MM54C174
MM74C174
b0 3V to VCC a0 3V
b55 C to a125 C
b40 C to a85 C
Storage Temperature Range
Power Dissipation (PD)
Dual-In-Line
Small Outline
Operating VCC Range
Absolute Maximum VCC
Lead Temperature (Soldering 10 sec )
b65 C to a150 C
700 mW
500 mW
3 0V to 15V
18V
260 C
DC Electrical Characteristics Min Max limits apply across temperature range unless otherwise specified
Symbol
Parameter
Conditions
Min Typ Max Units
CMOS TO CMOS
VIN(1)
Logical ‘‘1’’ Input Voltage
VIN(0)
Logical ‘‘0’’ Input Voltage
VOUT(1)
Logical ‘‘1’’ Output Voltage
VOUT(0)
Logical ‘‘0’’ Output Voltage
IIN(1)
Logical ‘‘1’’ Input Current
IIN(0)
Logical ‘‘0’’ Input Current
ICC Supply Current
CMOS LPTTL INTERFACE
VCC e 5V
VCC e 10V
VCC e 5V
VCC e 10V
VCC e 5V IO e b10 mA
VCC e 10V IO e b10 mA
VCC e 5V IO e 10 mA
VCC e 10V IO e 10 mA
VCC e 15V VIN e 15V
VCC e 15V VIN e 0V
VCC e 15V
35
80
45
90
b1 0
15
20
0 005
b0 005
0 05
05
10
10
300
V
V
V
V
V
V
V
V
mA
mA
mA
VIN(1)
Logical ‘‘1’’ Input Voltage
54C VCC e 4 5V
74C VCC e 4 75V
VCCb1 5
VCCb1 5
VIN(0)
Logical ‘‘0’’ Input Voltage
54C VCC e 4 5V
74C VCC e 4 75V
VOUT(1)
Logical ‘‘1’’ Output Voltage
54C VCC e 4 5V IO e b360 mA
74C VCC e 4 75V IO e b360 mA
24
24
VOUT(0)
Logical ‘‘0’’ Output Voltage
54C VCC e 4 5V IO e 360 mA
74C VCC e 4 75V IO e 360 mA
OUTPUT DRIVE (See 54C 74C Family Characteristics Data Sheet) (short circuit current)
V
V
08 V
08 V
V
V
04 V
04 V
ISOURCE
Output Source Current
(P-Channel)
VCC e 5V
TA e 25 C VOUT e 0V
b1 75
b3 3
mA
ISOURCE
Output Source Current
(P-Channel)
VCC e 10V
TA e 25 C VOUT e 0V
b8 0
b15
mA
ISINK
Output Sink Current
(N-Channel)
VCC e 5V
TA e 25 C VOUT e 0V
1 75 3 6
mA
ISINK
Output Sink Current
(N-Channel)
VCC e 5V
TA e 25 C VOUT e 0V
8 0 16
mA
Note 1 ‘‘Absolute Maximum Ratings’’ are those values beyond which the safety of the device cannot be guaranteed Except for ‘‘Operating Temperature Range’’
they are not meant to imply that the devices should be operated at these limits The table of ‘‘Electrical Characteristics’’ provides conditions for actual device
operation
2




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